首页> 外文OA文献 >A vision prosthesis neurostimulator: progress towards the realisation of a neural prosthesis for the blind
【2h】

A vision prosthesis neurostimulator: progress towards the realisation of a neural prosthesis for the blind

机译:视觉假体神经刺激器:实现盲人神经假体的进展

摘要

Restoring vision to the blind has been an objective of several research teams for a number of years. It is known that spots of light -- phosphenes -- can be elicited by way of electrical stimulation of surviving retinal neurons. Beyond this, however, our understanding of prosthetic vision remains rudimentary.To advance the realisation of a clinically viable prosthesis for the blind, a versatile integrated circuit neurostimulator was designed, manufactured, and verified. The neurostimulator provides electrical stimuli to surviving neurons in the visual pathway, affording blind patients some form of patterned vision; besides other benefits (independence), this limited vision would let patients distinguish between day and night (resetting their circadian rhythm).This thesis presents the development of the neurostimulator, an interdisciplinary work bridging engineering and medicine. Features of the neurostimulator include: high-voltage CMOS transistors in key circuits, to prevent voltage compliance issues due to an unknown or changing combined tissue and electrode/tissue interface impedance; simultaneous stimulation using current sources and sinks, with return electrodes configured to provide maximum charge containment at each stimulation site; stimuli delivered to a two dimensional mosaic of hexagonally packed electrodes, multiplexing current sources and sinks to allow each electrode in the whole mosaic to become a stimulation site; electrode shorting to remove excess charge accumulated during each stimulation phase.Detailed electrical testing and characterisation verified that the neurostimulator performed as specified, and comparable to, or better than, other vision prostheses neurostimulators. In addition, results from several animal experiments verified that the neurostimulator can elicit electrically evoked visual responses. The features of the neurostimulator enable research into how simultaneous electrical stimulation affects the visual neural pathways; those research results could impact other neural prosthetics research and devices.
机译:多年来,恢复盲人视力一直是数个研究小组的目标。众所周知,可以通过电刺激存活的视网膜神经元引起光斑-磷化氢。然而,除此之外,我们对假肢视觉的理解仍然是基本的。为了促进盲人临床上可行的假肢的实现,设计,制造和验证了一种多功能集成电路神经刺激器。神经刺激器对视觉通路中存活的神经元提供电刺激,从而为盲人患者提供某种形式的视觉模式;除了其他好处(独立性)之外,这种有限的视力还可以使患者在白天和晚上之间进行区分(重新设置他们的昼夜节律)。本文介绍了神经刺激器的发展,这是一种跨学科的工作,将工程学和医学联系在一起。神经刺激器的功能包括:关键电路中的高压CMOS晶体管,可防止由于未知的或变化的组织与电极/组织界面的组合阻抗而引起的电压顺应性问题;使用电流源和电流吸收器同时进行刺激,并配置返回电极以在每个刺激部位提供最大的电荷抑制;刺激传递到六边形堆积电极的二维镶嵌体中,多路复用电流源和吸收器,以使整个镶嵌体中的每个电极都成为刺激部位;电极短路以消除在每个刺激阶段积累的多余电荷。详细的电学测试和表征证明,该神经刺激仪的性能达到了规定水平,与其他视觉假体神经刺激仪相当或更好。另外,一些动物实验的结果证明,神经刺激器可以引起电诱发的视觉反应。神经刺激器的功能使人们能够研究同时电刺激如何影响视觉神经通路。这些研究结果可能会影响其他神经修复技术和设备。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号